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This edited work covers piezoelectric materials in the form of
beams, plates, shells, and other structural components in modern
devices and structures. Applications are frequency control and
detection functions in resonators, sensors, actuators,
oscillations, and other smart and intelligent structures. The
products and technology are with us in our daily life through
computers and communication devices. The contributions cover novel
methods for the analysis of piezoelectric structures including wave
propagation, high frequency vibration, material characterization,
and optimization of structures. Understanding of these methods is
increasingly important in the design and modelling of next
generation devices and micro-structures with piezoelectric elements
and effects.
This volume is published in honor of Professor Chaochen Zhou's 80th
birthday. The Festschrift contains 13 refereed papers by leading
researchers who were among the participants of the celebratory
conference in Changsha, China that took place in October 2017. The
papers cover a broad spectrum of subjects related to Formal Methods
for the development of computer systems. Topics include
Probabilistic Programming, Concurrency, Quantum Computing, Domain
Engineering, Real-time and Hybrid Systems, and Cloud Computing.
Chaochen Zhou is internationally recognized for his own
contributions and for the wide influence that he has had through
his appointments in Oxford (UK) where he collaborated with
Professor Tony Hoare, Lyngby (Denmark) where he worked with
Professor Dines Bjorner, UNU-IIST (Macau) where he moved from being
Principal Research Fellow to his appointed as Director of the
Institute, as well as in Beijing. His book on the Duration Calculus
(joint with Michael Hansen) made a seminal contribution to
specifying and reasoning about real-time systems. Chaochen Zhou's
contributions have been marked by his election as a member of the
Chinese Academy of Sciences.
New adaptive and event-triggered control designs with concrete
applications in undersea construction, offshore drilling, and cable
elevators Control applications in undersea construction, cable
elevators, and offshore drilling present major methodological
challenges because they involve PDE systems (cables and
drillstrings) of time-varying length, coupled with ODE systems (the
attached loads or tools) that usually have unknown parameters and
unmeasured states. In PDE Control of String-Actuated Motion, Ji
Wang and Miroslav Krstic develop control algorithms for these
complex PDE-ODE systems evolving on time-varying domains. Motivated
by physical systems, the book's algorithms are designed to operate,
with rigorous mathematical guarantees, in the presence of
real-world challenges, such as unknown parameters, unmeasured
distributed states, environmental disturbances, delays, and
event-triggered implementations. The book leverages the power of
the PDE backstepping approach and expands its scope in many
directions. Filled with theoretical innovations and comprehensive
in its coverage, PDE Control of String-Actuated Motion provides new
design tools and mathematical techniques with far-reaching
potential in adaptive control, delay systems, and event-triggered
control.
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Dependable Software Engineering. Theories, Tools, and Applications - Third International Symposium, SETTA 2017, Changsha, China, October 23-25, 2017, Proceedings (Paperback, 1st ed. 2017)
Kim Guldstrand Larsen, Oleg Sokolsky, Ji Wang
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R2,582
Discovery Miles 25 820
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Ships in 10 - 15 working days
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This book constitutes the proceedings of the Third International
Symposium on Dependable Software Engineering: Theories, Tools, and
Applications, SETTA 2017, held in Changsha, China, in
October2017.The 19 full papers presented together with 3 invited
talks were carefully reviewed and selected from 31 submissions. The
aim of the symposium is to bring together international researchers
and practitioners in the field of software technology. Its focus is
on probabilistic and statistical analysis; timed and hybrid
systems; program analysis; modeling and verification;
formalization; and tools.
New adaptive and event-triggered control designs with concrete
applications in undersea construction, offshore drilling, and cable
elevators Control applications in undersea construction, cable
elevators, and offshore drilling present major methodological
challenges because they involve PDE systems (cables and
drillstrings) of time-varying length, coupled with ODE systems (the
attached loads or tools) that usually have unknown parameters and
unmeasured states. In PDE Control of String-Actuated Motion, Ji
Wang and Miroslav Krstic develop control algorithms for these
complex PDE-ODE systems evolving on time-varying domains. Motivated
by physical systems, the book’s algorithms are designed to
operate, with rigorous mathematical guarantees, in the presence of
real-world challenges, such as unknown parameters, unmeasured
distributed states, environmental disturbances, delays, and
event-triggered implementations. The book leverages the power of
the PDE backstepping approach and expands its scope in many
directions. Filled with theoretical innovations and comprehensive
in its coverage, PDE Control of String-Actuated Motion provides new
design tools and mathematical techniques with far-reaching
potential in adaptive control, delay systems, and event-triggered
control.
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